首页|高丰度稀土永磁体热扩渗工艺优化及重稀土扩散行为

高丰度稀土永磁体热扩渗工艺优化及重稀土扩散行为

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以((La,Ce)0.2(Pr,Nd)0.8)FebalB商业高丰度磁体为原料,对其热扩散工艺进行研究.针对Ce、La含量较高、磁体热扩渗效果较差的问题,提出采用烧结态磁体直接进行热扩渗处理.研究表明:磁体的最佳热扩渗工艺参数为880 ℃X8h+500 ℃×2 h,矫顽力从8.11 kOe直接提高到18.38 kOe,与时效后热扩渗磁体矫顽力相比增幅10.4%.晶粒尺寸相比时效后热扩渗磁体减少0.96 μm,约14%.通过菲克第二定律计算,晶界中Dy元素对主相晶粒的扩散系数D1=4.8X10-6 μm2·s-1,D2=1.1 μm2·s-1.可见,Dy元素在高丰度稀土磁体中热扩渗相对较慢,形成(Nd/Ce/La/Dy)2Fe14B壳层需更长时间,但长时间热扩渗导致晶粒尺寸增加,含氧量增加,因此热扩渗效果较差.采用烧结态直接热扩渗工艺,合并时效和热扩渗工序,缩短工序流程,减少了磁体在高温处理的时间,避免了晶粒粗化,降低晶粒尺寸,可获得更好的微观组织结构,进而提升磁体矫顽力,对提高高丰度稀土永磁体矫顽力具有重要意义.
Optimization of thermal diffusion process for high abundance rare earth permanent magnet and heavy rare earth diffusion behavior
The thermal diffusion process of high-abundance permanent magnets((La,Ce)0.2(Pr,Nd)0.8)Feba1 B was investigated.Meanwhile,the thermal diffusion behavior of heavy rare earth was analyzed.The high-abundant mag-nets present a poor thermal diffusion effect because of the magnets with more Ce and La content.In order to solve this problem,a direct thermal diffusion process was proposed.The sintered magnets were directly performed ther-mal diffusion treatment.The optimal thermal diffusion process parameter is 880 ℃×8 h+500 ℃×2 h,and the co-ercivity is directly increased from 8.11 kOe to 18.38 kOe.Compared to the coercivity and grain size of magnet dif-fused after aging,the coercivity increases by 10.4%,and the average grain size is reduced about 14%,respectively.According to Fick's second law,the diffusion coefficients of Dy were calculated.The coefficients into the main phase grain and the grain boundary are D1=4.8×10-6 μm2·s-1 and D2=1.1 μm2·s-1,respectively.The thermal dif-fusion of Dy in the high-abundance rare earth magnet is slower than that of the ordinary magnet.It should take lon-ger time to form(Nd/Ce/La/Dy)2 Fe14 B shell.The long-term thermal diffusion results in an increase of the grain size and oxygen content,this is the reason why the high-abundance magnets present a poor thermal diffusion effect.By using the direct thermal diffusion process,the aging and thermal diffusion processes can be combined.This process would shorten the time for the magnets during high-temperature treatment.Therefore,the grain size of the magnets could be reduced and the microstructure of the magnets would be improved,which result into enhancement of the magnet coercivity.Direct thermal diffusion process avoids grain coarsing and shortens the working process,so it is of great significance to improve the coercivity of high-abundance rare earth permanent magnets.

high abundance rare earth permanent magnetdiffusion coefficientdirect diffusion methodcoercivitydiffusion behavior of heavy rare earths

高宇、刘治国、孙亚辉、张通博、徐大可、裴文利

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东北大学材料科学与工程学院,辽宁沈阳 110819

东北大学材料各向异性与织构教育部重点实验室,辽宁沈阳 110819

海军航空大学青岛校区,山东青岛 266041

高丰度稀土永磁体 扩散系数 直接扩渗法 矫顽力 重稀土扩散行为

国家重点研发计划云南省重大科技专项-新材料重大专项国家自然科学基金资助项目国家自然科学基金资助项目

2021YFB3501404202102AB080008-152371179552071070

2024

金属功能材料
中国钢研科技集团有限公司 中国金属学会功能材料分会

金属功能材料

CSTPCD
影响因子:0.527
ISSN:1005-8192
年,卷(期):2024.31(2)
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